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Recycling Cellulases during the Hydrolysis of Steam Exploded and Ethanol Pretreated Lodgepole Pine

机译:蒸汽爆破和乙醇预处理的Lodge子松水解过程中的纤维素酶回收。

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Recycling of cellulases is one way of reducing the high cost of enzymes during the bioconversion process.The effects of surfactant addition on enzymatic hydrolysis and the potential recycling of cellulases were studied during the hydrolysis of steam exploded Lodgepole pine(SELP)and ethanol pretreated Lodgepole pine(EPLP).Three cellulase preparations(Celluclast,Spezyme CP,and MSUBC)were evaluated to determine their hydrolysis efficiencies over multiple rounds of recycling.The surfactant,Tween 80,significantly increased the yield from 63% to 86% during the hydrolysis of the SELP substrate.The addition of surfactant to the hydrolysis of the EPLP substrate increased the free enzymes in the supernatant from 71% of the initial protein to 96%.Based on the Langmuir adsorption constants,cellulases(Celluclast and Spezyme CP)from Trichoderma reesei showed a higher affinity(3.48 mL/mg and 3.17 mL/mg)for the EPLP substrate than did the Penicillium enzyme(0.62 mg/mg).The Trichoderma reesei enzyme was used in four successive rounds of enzyme recycling using surfactant addition and readsorption onto fresh substrates during the hydrolysis of EPLP.In contrast,the Penicillium-derived enzyme preparation(MSUBC)could only be recycled once.When the same recycling strategy was carried out using the SELP substrate,the hydrolysis yield declined during each enzyme recycling round.These results suggested that the higher lignin content of the SELP substrate,and the low affinity of cellulases for the SELP substrate limited enzyme recycling by readsorption onto fresh substrates.
机译:纤维素酶的回收是降低生物转化过程中酶的高成本的一种方法。研究了表面活性剂的添加对蒸汽爆炸小松(SELP)和乙醇预处理的小松的水解过程中酶水解和纤维素酶潜在回收的影响。 (EPLP)。对三种纤维素酶制剂(Celluclast,Spezyme CP和MSUBC)进行了评估,以确定它们在多次循环中的水解效率。表面活性剂Tween 80在水解过程中将收率从63%显着提高到86%。 SELP底物。在EPLP底物的水解中添加表面活性剂可使上清液中的游离酶从初始蛋白质的71%增至96%。基于Langmuir吸附常数,里氏木霉的纤维素酶(Celluclast和Spezyme CP)显示与青霉酶(0.62 mg / mg)相比,对EPLP底物的亲和力更高(3.48 mL / mg和3.17 mL / mg)。通过在EPLP水解过程中添加表面活性剂并重新吸附到新鲜的底物上,连续四轮酶循环使用。相反,青霉素衍生的酶制剂(MSUBC)只能循环一次。这些结果表明,SELP底物的木质素含量较高,而纤维素酶对SELP底物的亲和力低,限制了酶在新鲜底物上的再吸收,从而限制了酶的循环利用。

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